THE looked at the MENA higher education establishments by measuring their knowledge transfer, impact and international outlook, thus in Rankings for 2022 that are given by Country breakdown. It would be interesting to compare the same Rankings in 2021.
Arab University Rankings 2022: Country breakdown
The different countries of the Arab region have different strengths in higher education. Here we explore their scores against THE’s five pillars: teaching, research, citations, society (which measures knowledge transfer and impact) and international outlook
Algeria’s overall score is 24.3, based on 21 universities ranked, making it the lowest ranking region in the table. The average score for society is higher than for three other countries, however, at 26.9.
Egypt
Egypt features in the top half of the table, with an overall score of 59.6 based on 34 universities. While the country scores especially high for citations (71.3), it falls down on international outlook (45.3).
Iraq
While Iraq’s average overall score is among the lowest in the region, based on 23 universities ranked, the country does punch above its weight in the society pillar, with an average score of 59.0.
Jordan
An all-rounder, Jordan has average scores in the 40s for all the pillars. And when it comes to working internationally, it scores 53.8, based on 14 universities ranked.
Lebanon
Lebanon is the third-highest scoring country in the region, or the second-highest when excluding countries with fewer than five universities ranked. Its strengths are teaching (82.9) and research (79.0), but its weakness is citations (39.4).
Morocco
The average overall score for Morocco is 37.4, based on 10 universities ranked. The country’s strongest pillar is society, where it has an average score of 54.2.
Saudi Arabia
With the seventh-highest score in the region (or fourth when discounting countries with fewer than five universities ranked), Saudi Arabia scores well all-round. Its strongest areas are international outlook (75.2) and citations (74.7).
Tunisia
With an overall score of 44.4, based on 10 universities, Tunisia sits around the middle of the table. The pillar on which it performs best is teaching (53.2), followed by research (50.3); it is weakest on citations (23.2).
United Arab Emirates
The UAE has the highest average overall score in the region, when counting countries with five or more universities ranked, at 71.2. It scores especially well on the international outlook pillar (82.4). Its lowest scoring pillar is society at 51.0.
to celebrate its independence and setting up, the United Arab Emirates is toying with expediting a vehicle From the dunes of Dubai to the soil of the Moon. Why not? Let us read this story from Gulf News of today.
UAE@51: From the dunes of Dubai to the soil of the Moon, Rashid Rover all set to make history
All you need to know about the UAE’s lunar mission that will take off on November 30
Rashid Rover’s core scientific mission is to better understand how lunar dust and rocks vary across the moon.Image Credit: Supplied
Dubai: In what is a huge feat ahead of the 51st UAE National Day, Emirati-made Rashid Rover will shoot to the Moon on Wednesday, November 30, at 12.39pm (Gulf Standard Time), carrying with it the pride and dreams of the UAE — and the entire Arab world.
From the desert dunes of the UAE to the soil of the Moon, the lunar rover — named after the late Sheikh Rashid bin Saeed Al Maktoum, builder of modern Dubai — will give mankind and the global scientific community more knowledge about Earth’s closest celestial neighbour.
It will land on Atlas Crater, located at 47.5°N, 44.4°E on the Moon’s southeastern outer edge of Mare Frigoris (Sea of Cold), and from there capture photos and collect information of the unexplored crater area and the vast basins on Moon’s surface that were formed billions of years ago.
Rashid Rover will study the characteristics of lunar soil, the petrography (composition and properties of lunar rocks) and geology of the Moon. It will also take photos of the moon’s dust movement, surface plasma conditions, and the lunar regolith (blanket of superficial deposits covering solid rocks).Image Credit: Virendra Saklani/Gulf News
The UAE’s moonshot has lofty goals. According to Mohammed Bin Rashid Space Centre (MBRSC),“Rashid Rover will provide about 10 gigabytes of recorded material, scientific data and new images to the global scientific community to study the Moon.”
In particular, Rashid Rover will study the characteristics of lunar soil, the petrography (composition and properties of lunar rocks) and geology of the Moon. It will also take photos of the moon’s dust movement, surface plasma conditions, and the lunar regolith (blanket of superficial deposits covering solid rocks).
Rashid Rover will help scientists better understand how lunar dust and rocks vary across the Moon. It will also provide fresh data for the development of new technologies that can be used to unravel the origins of the Earth and our solar system.
The success of the first Emirates Lunar Mission (ELM) will make the UAE the first Arab country and among the first countries in the world to land a spacecraft on the Moon, after the United States, former Soviet Union and China.
The success of the first Emirates Lunar Mission (ELM) will make the UAE the first Arab country and among the first countries in the world to land a spacecraft on the Moon, after the United States, former Soviet Union and China.Image Credit: Supplied
MBRSC underlined: “The mission embodies the aspirations of the UAE. Rashid Rover will collect images and information that will allow the UAE to conduct comprehensive and integrated studies on how to build human settlement on the Moon, prepare for future missions to study Mars and provide the scientific community with answers about the solar system and other planets.”
Before lift-off, let us look back at the timeline, technical specifications, instruments, functionalities and other important details of the Emirati-made Rashid Rover.
Two years ahead
His Highness Sheikh Mohammed bin Rashid Al Maktoum, Vice-President and Prime Minister of the UAE and Ruler of Dubai, first announced Rashid Rover in September 2020, and the original goal was to land it on the Moon by 2024.
An image to show where Rashid Rover will land on the moon.
In April 2021, MBRSC signed a contract with ispace, inc., a Japanese private lunar robotic exploration company, to transport Rashid Rover to the Moon aboard Hakuto-R M1 (mission 1) lander. Under the terms of the agreement, ispace will also provide wired communication and power during the cruise phase and engage in wireless communication on the lunar surface.
Launch date
Lift-off is on Wednesday, November 30, at 12.39pm (Gulf Standard Time) from Space Launch Complex 40 at Cape Canaveral Space Force Station in Florida, USA, on a SpaceX Falcon 9 rocket. But the date and time are subject to change, depending on weather and other conditions at launch, according to MBRSC.
Hakuto-R M1, which means ‘white rabbit’ in Japanese (it is said a white rabbit lives on the Moon, according to Japanese folklore), will also carry other payloads, including a transformable lunar robot from Japan Aerospace Exploration Agency; a test module for a solid-state battery from NGK Spark Plug Co., Ltd., an artificial intelligence (AI) flight computer from Mission Control Space Services Inc., a multiple 360-degree camera from Canadensys Aerospace, a panel engraved with the names of Hakuto crowdfunding supporters, and a music disc containing the song ‘Sorato’ played by Japanese rock band Sakanaction.
Fuel-saving route
Once launched, the integrated spacecraft Hakuto-R M1 that will carry Rashid Rover and other payload to the Moon will take a low-energy route to the Moon rather than a direct approach. This means the landing on the Moon will take about five months after launch, in April 2023.
Dr Hamad Al Marzooqi, project manager of Emirates Lunar Mission at MBRSC, told Gulf News the rationale for the fuel-saving but long route. He said: “The main factor is the cost of the mission. The cost comes from the volume and mass of the spacecraft. In order to reach to the moon within six days – which is the shortest path – you would need to burn a lot of fuel which means that you need a big tank and a big propulsion system to do that.”
“But it will have a huge impact in cost so, in order to reduce the cost of the mission, ispace (our partner) has selected their approach that they can reach to the lunar surface within five months but it will be less costly because it will burn much less fuel. They will use a smaller tank and propulsion system, therefore the launch cost and the cost of developing the developing system will be lower,” he further explained.
Dimitra Atri, astrophysicist at New York University in Abu Dhabi, added: “In order to keep the prices of payload delivery attractive to customers, private companies reduce their expenses by choosing the lower cost option, which consumes less energy but takes much longer.”
Fully-automated landing
SpaceX Falcon 9 rocket will take Hakuto-R M1 into the Moon’s orbit, and following its successful separation from the launch vehicle (rocket), Hakuto-R M1 will use the gravitational pull of the Earth and sun to guide it to the moon.
As it gets closer to the lunar surface, the Japanese-made lander will first orbit the moon with an increasingly elliptical trajectory, before angling itself vertically to softly land on the moon and perform a fully-automated landing.
SpaceX Falcon 9 rocket will take Hakuto-R M1 into the Moon’s orbit.Image Credit: AP
Hakuto-R M1 will then establish a steady telecommunication and power supply on the lunar surface after landing to support customer payload’s surface operations, including that of the UAE’s Rashid Rover.
Landing site
MBRSC confirmed Atlas Crater, located at 47.5°N, 44.4°E on the moon’s southeastern outer edge of Mare Frigoris (“Sea of Cold”), as Rashid Rover’s landing site.
MBRSC explained: “It was chosen to maintain flexibility during operations. Mare Frigoris lies in the far lunar north. The primary landing site was chosen along with multiple contingencies, which may be used depending on variables that occur during transit. The site meets the technical specifications of the lander technology demonstration mission and the scientific exploration objectives for the ELM mission.”
Mohammed Bin Rashid Centre.Image Credit: Supplied
Atlas Crater has a diameter of 88 kilometres, and believer to have been formed between 3.2 to 3.8 billion years ago. It is circular in shape and bounded by an intricately terraced rim wall. The crater is 2km deep and has a complex floor covered in hills and cracks.
Aside from Atlas Crater, alternative landing targets – according to ispace – include Lacus Somniorum, Sinus Iridium and Oceanus Procellarum, among others.
Compact rover
Designed and developed fully by an Emirati team, Rashid Rover is touted as the world’s most compact rover that could land on the Moon. Its height is 70cm, length is 50cm and width is 50cm. Its weight is approximately 10kg with payload, but it can climb over an obstacle up to 10cm tall and descend a 20-degree slope.
Because Rashid Rover has been delivered well ahead of the original 2024 deadline, building it required rapid prototyping. According to Al Marqoozi, engineers at MBRSC “went through five modules until they reached with the one” that will be launched on November 30.
Advanced cameras
The four-wheeled Rashid Rover has 3D cameras, advanced motion system, sensors, and communication system that are powered by solar panels. There are four cameras that move vertically and horizontally, including two main cameras, which are Caspex (camera for space exploration) that can withstand vibrations during launch and landing
MBRSC has partnered with French space agency CNES (National Centre for Space Studies) for the two Caspex that will be used analyse the properties of lunar soil, dust, radioactivity, electrical activities, as well as the rocks on the moon surface. One Caspex is installed on top of the rover’s mast to provide panoramic visibility of its surroundings while the rear-mounted CASPEX camera will deliver images of the lunar soil with high spatial resolution.
“Rashid Rover’s drive tracks will be analysed to determine wheel sinkage and to investigate the detailed wheel-soil interaction. Such data will be important to design the mobility systems of future rovers,” MBRSC noted.
Mission period
Rashid Rover will study the Moon’s surroundings for one lunar day, which is equivalent to 14 days on Earth. But there is a chance Rashid Rover’s mission can be extended to another lunar day. Al Marzooqi earlier explained: “After the first lunar day the rover will go into a hibernation or mode sleep during the (lunar) night (which is also equivalent to 14 Earth nights) until the sun rises again and the temperature on the rover surface starts to rise again. And by that time, the team will try to “wake up” Rashid Rover to see if its systems were able to survive the low temperatures and ready for the second lunar day.
The Moon’s environment, however, is very harsh. The temperature drops to as low as negative 173 degrees Celsius, from as high as 127 degrees Celsius, when sunlight hits the Moon’s surface. But Rashid Rover is equipped with the latest technologies that can resist the lunar surface temperature.
To the Moon and back
Rashid Rover will not return to Earth. It’s a one-way flight and there is no transport that will bring back Rashid Rover and Hakuto-R. What Rashid Rover will bring back to Earth are multiple images – around 10 gigabytes of recorded material and scientific data. The ELM team at MBRSC will use these to test new technologies in material science, robotics, mobility, navigation and communications. The findings will also help in the design of future missions to survive and function in harsh space environment.
Rashid Rover is just the first of the UAE’s multiple missions to the Moon. A couple of months ago, in September, MBRSC signed an agreement with China National Space Administration (CNSA) to kickstart joint space projects and future lunar exploration, including sending the next UAE rover aboard Chang’e 7, a robotic Chinese lunar exploration mission expected to be launched in 2026 to target the Moon’s south pole.
A visiting official says that hosting success sets new standards for future mega sporting events. The Qatar World Cup is the first edition of the significant soccer tournament ever held during December, and in the Middle East.
Qatar invested significantly in the mega-event, including revamping its national infrastructure. The sought-after ‘soft power’ implications start slowly but surely to show as the games unfold.
On the other hand, sustainable development requires, per the UN an integrated approach that takes into consideration environmental concerns along with economic development but, above all sustainability in the future. Will all those built-up infrastructures be of some use?
Qatar’s hosting success sets new standards for future mega sporting events: Bosnian Deputy PM
DOHA: Deputy Prime Minister and Minister of Foreign Affairs of Bosnia and Herzegovina HE Dr Bisera Turkovic said that Qatar did an amazing work to welcome the world during the FIFA World Cup Qatar 2022 and succeeded in establishing an incredible and excellent infrastructure, indicating that the FIFA World Cup Qatar 2022 has set new standards for future sporting mega-events.
In her remarks to Qatar News Agency, Her Excellency pointed out that Qatar’s hosting of such a global event will inspire generations of young people to come to embrace each other and create a more tolerant world.
Her Excellency said: “The whole world was watching the Al Bayt stadium for the opening ceremony. I am happy that I was present as Deputy Prime Minister and Minister of Foreign Affairs of Bosnia and Herzegovina, from the Western Balkans and a European country. The opening was a great global event for the first time to be held in an Arab country. Qatar has emerged into a modern, prosperous state, whose citizens enjoy opportunities and security, thanks to the wise leadership of HH the Amir, following the footsteps of HH the Father Amir.”
HE stressed the need to develop the culture of tolerance and respect, as highlighted during the World Cup opening ceremony, saying: “This is the first World Cup taking place in an Arab country and in a Middle Eastern country. It is a great chance for people to get to know a different culture and to learn about one great religion in the world.”
“The more we know the better chance we have for progress and stability in the world. Qatar offers open hand to all who want to come and witness what the Qatari nation achieved in such a short period of time offering unity of basic values and appreciation for difference with full respect of their own culture and religion,” Her Excellency added.
HE Dr. Bisera Turkovic indicated that previous World Cup hosting countries were not subjected to smear campaigns as Qatar was, saying: “Other countries did not receive such scrutiny when hosting global sporting events, even though those countries had many more things that could be criticized.”
Her Excellency explained that Qatar once again stresses that there is more that can unite people rather than divide them, and as sports are a healthy part of societies, it should remain clear from political influence, struggle to dominate, and imposition of bad habits such as alcohol and drugs.
The Bosnian official expressed her happiness that a Bosnian folklore group was present to take part in the world cup festivities at Katara Cultural Village for this truly global event.
HE Deputy Prime Minister pointed out that there are strong fields of cooperation between Bosnia and the State of Qatar, including political, economic, and cultural cooperation that is based on friendship and fraternity. This has been maintained through the exchange of visits between officials of the two countries at the highest levels and documented by the signing of many agreements and bilateral cooperation protocols. Her Excellency expressed her hope to see economic cooperation expansion during the coming period in all sectors.
Her Excellency added that the government of Bosnia and Herzegovina has been working hard to attract public and private investment from Qatar through having more connectivity between the two countries, enabling direct flights with Qatar Airways, and increasing rights and security for Qataris in ownership of the real estate in Bosnia.
A smart city uses digitalisation-supported information and communication technology (ICT) in its diverse operational exercises, shares information and provides better governance.: Constructing materially smarter cities on Elkem.
In 2050 close to 70 percent of the world’s population is expected to live in cities and the need for efficient infrastructure will increase. Did you know that the materials used on satellites and space applications play a crucial role in enabling smart and safe cities of the future?
There are different definitions of what a smart city actually is. As a general interpretation, however, consensus seems to align around that the term says something about the degree to which traditional networks and services are made more efficient with use of digital and telecommunication technologies – for the benefit of its inhabitants and businesses
Smart cities use Internet of Things (IoT) devices, like sensors, lights, and meters to collect and analyse data. The cities can then use this data to improve infrastructure, public utilities and services, and more.
IoT is the concept of connecting any device to the Internet and to other connected devices (IBM, source).
Source: UN Department of Economic and Social Affairs (2018)
The rapid urbanisation will increase demand for services in urban areas exponentially and put pressure on population centres. In this future scenario, efficient, smart cities can represent a part of the solution.
Elkem has delivered metals and materials for the construction sector for several decades and play a key role in how cities are becoming better, smarter and more efficient.
In addition, silicones also have a wide range of usages within electronics.
“The extreme resistance of our materials, combining thermal and fire resistance as well as chemical stability, make silicones materials outstanding for long-term applications, where you either do not want to or cannot change materials frequently. This is the reason why silicones have become the material of choice in aviation, aerospace and automotive industry”, says Yves Giraud, global business manager in Elkem Silicones.
“For example, if you launch a satellite, you will not be able to change and inspect the materials every three years. The materials must be stable over a 15-year period in a very challenging environment. Another example is 5G antennas, which will become increasingly important as smart infrastructure, where Elkem’s material solutions are vital to protect critical functionalities and to reduce the need for maintenance and inspections for our customers”, says Giraud.
Another example is 5G antennas, which will become increasingly important as smart infrastructure, where Elkem’s material solutions are vital to protect critical functionalities and to reduce the need for maintenance and inspections for our customers”, says Giraud.
Reliable, sustainable and innovative
With increased demand for new energy solutions and smart applications, the role of cables is also becoming more important. To meet demand, manufacturers are looking for safer, more reliable, sustainable and innovative solutions.
Silicone rubber insulated cables provides both heat and fire resistance, and present high mechanical properties. The materials therefore contribute to protecting our lives in the cities.
“We believe smarter cities are one of several drivers that will increase the need for safe products that lasts. The use of silicones in smart application is a great reusable alternative, and is also of significant sustainability value, generating energy and saving CO2 emissions nine times greater than the impacts of production and recycling”, says Giraud.
Developing nations were justifiably jubilant at the close of COP27 as negotiators from wealthy countries around the world agreed for the first time to establish a dedicated “loss and damage” fund for vulnerable countries harmed by climate change.
It was an important and hard fought acknowledgment of the damage – and of who bears at least some responsibility for the cost.
But the fund might not materialize in the way that developing countries hope.
I study global environmental policy and have been following climate negotiations from their inception at the 1992 Rio Earth Summit. Here’s what’s in the agreement reached at COP27, the United Nations climate talks in Egypt in November 2022, and why it holds much promise but very few commitments.
3 key questions
All decisions at these U.N. climate conferences – always – are promissory notes. And the legacy of climate negotiations is one of promises not kept.
This promise, welcome as it is, is particularly vague and unconvincing, even by U.N. standards.
Essentially, the agreement only begins the process of establishing a fund. The implementable decision is to set up a “transitional committee,” which is tasked with making recommendations for the world to consider at the 2023 climate conference, COP28, in Dubai.
Importantly for wealthy countries, the text avoids terms like “liability” and “compensation.” Those had beenred lines for the United States. The most important operational questions were also left to 2023. Three, in particular, are likely to hound the next COP.
1) Who will pay into this new fund?
Developed countries have made it very clear that the fund will be voluntary and should not be restricted only to developed country contributions. Given that the much-trumpeted US$100 billion a year that wealthy nations promised in 2015 to provide for developing nations has not yet materialized, believing that rich countries will be pouring their heart into this new venture seems to be yet another triumph of hope over experience.
2) The fund will be new, but will it be additional?
It is not at all clear if money in the fund will be “new” money or simply aid already committed for other issues and shifted to the fund. In fact, the COP27 language could easily be read as favoring arrangements that “complement and include” existing sources rather than new and additional financing.
3) Who would receive support from the fund?
As climate disasters increase all over the world, we could tragically get into disasters competing with disasters – is my drought more urgent than your flood? – unless explicit principles of climate justice and the polluter pays principle are clearly established.
What COP27 at Sharm el-Sheikh, Egypt, has done is to ensure that the idea of loss and damage will be a central feature of all future climate negotiations. That is big.
Seasoned observers left Sharm el-Sheikh wondering how developing countries were able to push the loss and damage agenda so successfully at COP27 when it has been so firmly resisted by large emitter countries like the United States for so long.
The logic of climate justice has always been impeccable: The countries that have contributed most to creating the problem are a near mirror opposite of those who face the most imminent risk of climatic loss and damage. So, what changed?
At least three things made COP27 the perfect time for this issue to ripen.
First, an unrelenting series of climate disasters have erased all doubts that we are now firmly in what I have been calling the “age of adaptation.” Climate impacts are no longer just a threat for tomorrow; they are a reality to be dealt with today.
Second, the devastating floods this summer that inundated a third of my home country of Pakistan provided the world with an immediate and extremely visual sense of what climate impacts can look like, particularly for the most vulnerable people. They affected 33 million people are expected to cost over $16 billion.
The floods, in addition to a spate of other recent climate calamities, provided developing countries – which happened to be represented at COP27 by an energized Pakistan as the chair of the “G-77 plus China,” a coalition of more than 170 developing countries – with the motivation and the authority to push a loss and damage agenda more vigorously than ever before.
Activists from developing nations pressed for a loss and damage fund during the COP27 U.N. climate conference, the first held in Africa. AP Photo/Peter Dejong
Finally, it is possible that COP-fatigue also played a role. Industrialized countries – particularly the U.S. and members of the European Union, which have traditionally blocked discussions of loss and damage – remain distracted by Russia’s war in Ukraine and the economic effects of the COVID-19 pandemic and seemed to show less immediate resistance than in the past.
Importantly, for now, developing countries got what they wanted: a fund for loss and damage. And developed countries were able to avoid what they have always been unwilling to give: any concrete funding commitments or any acknowledgment of responsibility for reparations.
Both can go home and declare victory. But not for long.
Is it just a ‘placebo fund’?
Real as the jubilation is for developing countries, it is also tempered. And rightly so.
For developing countries, there is a real danger that this turns out to be another “placebo fund,” to use Oxford University researcher Benito Müller’s term – an agreed-to funding arrangement without any agreed-to funding commitments.
Writing prior to COP15 in Copenhagen in 2009, Müller boldly declared that developing countries would never again “settle for more ‘placebo funds’.” I very much hopes he has not been proven wrong at Sharm el-Sheikh.
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